Ishihara Kazuhiko | Department Of Materials Engineering The University Of Tokyo
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概要
関連著者
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Ishihara Kazuhiko
Department Of Materials Engineering The University Of Tokyo
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高原 淳
九州大学 先導物質化学研究所
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Ishihara Kazuhiko
Department Of Biochemistry Kitasato University Graduate School Of Medical Sciences
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Miyamoto Kyota
Graduate School Of Engineering Kyushu University
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Kobayashi Motoyasu
Japan Science And Technology Agency Erato Takahara Soft Interfaces Project
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高原 淳
九州大学
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高原 淳
九州大学先導物質化学研究所
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ANNAKA Masahiko
Department of Chemistry, Kyushu University
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高原 淳
九大 先導物質化研
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Matsuda Yasuhiro
Institute For Materials Chemistry And Engineering Kyushu University
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Kobayashi Motoyasu
Institute For Materials Chemistry And Engineering Kyushu University
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Takahara Atsushi
Institute For Material Chemistry & Engineering Kyushu University
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Annaka Masahiko
Deapertment Of Chemistry Kyushu University
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Annaka Masahiko
Department Of Chemistry Kyushu University
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Takahara Atsushi
Fsbl (representatives Of The Academic Members)
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Takahara Atsushi
Institute For Fundamental Research Of Organic Chemistry Kyushu University
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Annaka Masahiko
Department of Applied Chemistry, Faculty of Science and Technology, Keio University
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MURAKAMI Akira
Department of Ophthalmology, Juntendo University School of Medicine
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Ishihara Kazuhiko
Department of Regulation Biochemistry, Kitasato University School of Medicine
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高原 淳
九大先導研
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Masunaga Hiroyasu
Japan Synchrotron Radiation Research Institute (jasri)/spring-8
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KITAGAWA Tatsuya
Department of Polymer Science and Engineering, Kyoto Institute of Technology
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YAMAOKA Tetsuji
Department of Polymer Science and Engineering, Kyoto Institute of Technology
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Murakami Akira
Department Of Polymer Science And Engineering Kyoto Institute Of Technology
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IWASE Reiko
Department of Bioscience, Teikyo University of Science and Technology
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Iwase Reiko
Department Of Biosciences Teikyo University Of Science And Technology
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TERAYAMA Yuki
Graduate School of Engineering, Kyushu University
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Murakami Akira
Department Of Biomolecular Engineering Kyoto Institute Of Technology
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Terayama Yuki
Graduate School Of Engineering Kyushu University
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OGAWA Hiroki
Japan Synchrotron Radiation Research Institute (JASRI/SPring-8)
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Yamaoka Tetsuji
Department Of Biomedical Engineering Advanced Medical Engineering Center National Cardiovascular Cen
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Ishikawa Tatsuya
Graduate School Of Science And Engineering For Education University Of Toyama
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Kitagawa Tatsuya
Department Of Polymer Science And Engineering Kyoto Institute Of Technology
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Masunaga Hiroyasu
Japan Synchrotron Radiation Research Institute (jasri/spring-8)
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Murakami Akira
Department Of Biomolecular Engineering Graduate School Of Science And Technology Kyoto Institute Of
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Masunaga Hiroyasu
Dic Cooperation
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Ogawa Hiroki
Japan Synchrotron Radiation Research Institute/spring-8
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Koike Jun-ichiro
Dic Cooperation
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Kikuchi Moriya
Japan Science And Technology Agency Erato Takahara Soft Interfaces Project
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HOSHINO Taiki
Japan Science and Technology Agency, ERATO, Takahara Soft Interfaces Project
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KOBAYASHI Motoyasu
Japan Science and Technology Agency, ERATO, Takahara Soft Interfaces Project
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HORIGOME Misao
Department of Materials Engineering, The University of Tokyo
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TAKAHARA Atsushi
Japan Science and Technology Agency, ERATO, Takahara Soft Interfaces Project
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Hoshino Taiki
Japan Science And Technology Agency Erato Takahara Soft Interfaces Project
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Horigome Misao
Department Of Materials Engineering The University Of Tokyo
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Ishikawa Tatsuya
Graduate School Of Engineering Kyushu University
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MURAKAMI Akira
Department of Polymer Science and Engineering, Kyoto Institute of Technology
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Murakami Akira
Departmemt of Cardiology, Surugadai Nihon University Hospital
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TAKAHARA Atsushi
Japan Science and Technology Agency, ERATO Takahara Soft Interfaces Project
著作論文
- Facilitated Disassembly of Polyplexes Composed of Self-assembling Amphiphilic Polycations Enhances the Gene Transfer Efficacy
- UCST-Type Cononsolvency Behavior of Poly(2-methacryloxyethyl phosphorylcholine in the Mixture of Water and Ethanol)
- Dimension f Poly(2-methacryloyloxyethyl phosphorylcholine) in Aqueous Solutions with Various Ionic Strength
- Chain dimension of polyampholytes in solution and immobilized brush states